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Comparative Genomic Analysis Reveals a Diverse Repertoire of Genes Involved in Prokaryote-Eukaryote Interactions within the Pseudovibrio Genus

机译:比较基因组分析揭示了假弧菌属内原核生物-真核生物相互作用基因的多样性。

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摘要

Strains of the Pseudovibrio genus have been detected worldwide, mainly as part of bacterial communities associated with marine invertebrates, particularly sponges. This recurrent association has been considered as an indication of a symbiotic relationship between these microbes and their host. Until recently, the availability of only two genomes, belonging to closely related strains, has limited the knowledge on the genomic and physiological features of the genus to a single phylogenetic lineage. Here we present 10 newly sequenced genomes of Pseudovibrio strains isolated from marine sponges from the west coast of Ireland, and including the other two publicly available genomes we performed an extensive comparative genomic analysis. Homogeneity was apparent in terms of both the orthologous genes and the metabolic features shared amongst the 12 strains. At the genomic level, a key physiological difference observed amongst the isolates was the presence only in strain P. axinellae AD2 of genes encoding proteins involved in assimilatory nitrate reduction, which was then proved experimentally. We then focused on studying those systems known to be involved in the interactions with eukaryotic and prokaryotic cells. This analysis revealed that the genus harbors a large diversity of toxin-like proteins, secretion systems and their potential effectors. Their distribution in the genus was not always consistent with the phylogenetic relationship of the strains. Finally, our analyses identified new genomic islands encoding potential toxin-immunity systems, previously unknown in the genus. Our analyses shed new light on the Pseudovibrio genus, indicating a large diversity of both metabolic features and systems for interacting with the host. The diversity in both distribution and abundance of these systems amongst the strains underlines how metabolically and phylogenetically similar bacteria may use different strategies to interact with the host and find a niche within its microbiota. Our data suggest the presence of a sponge-specific lineage of Pseudovibrio. The reduction in genome size and the loss of some systems potentially used to successfully enter the host, leads to the hypothesis that P. axinellae strain AD2 may be a lineage that presents an ancient association with the host and that may be vertically transmitted to the progeny.
机译:全世界已检测到假弧菌属菌株,主要是与海洋无脊椎动物有关的细菌群落的一部分,尤其是海绵。这种复发性联系被认为是这些微生物与其宿主之间共生关系的指示。直到最近,属于紧密相关菌株的仅两个基因组的可用性将关于属的基因组和生理特征的知识限制为单个系统发育谱系。在这里,我们介绍了10个新测序的假单胞菌菌株的基因组,这些菌株是从爱尔兰西海岸的海海绵中分离得到的,包括其他两个可公开获得的基因组,我们进行了广泛的比较基因组分析。就直系同源基因和在12个菌株之间共享的代谢特征而言,均一性是显而易见的。在基因组水平上,分离株之间观察到的关键生理差异是仅在菌株P. axinellae AD2中存在编码参与同化硝酸盐还原的蛋白质的基因,然后通过实验证明了这一点。然后,我们专注于研究已知与真核细胞和原核细胞相互作用的那些系统。这项分析表明,该属具有大量的毒素样蛋白,分泌系统及其潜在效应物。它们在属中的分布并不总是与菌株的系统发育关系一致。最后,我们的分析确定了编码潜在毒素-免疫系统的新基因组岛,这在该属以前是未知的。我们的分析为假弧菌属提供了新的亮点,表明新陈代谢特征和与宿主相互作用的系统差异很大。这些系统在菌株之间的分布和丰度的多样性突显了在代谢和系统发育上相似的细菌如何使用不同的策略与宿主相互作用并在其微生物群内找到适当位置。我们的数据表明存在假海绵弧菌的海绵特异性谱系。基因组大小的减少和可能成功用于宿主的某些系统的损失导致假说:无杆状疟原虫菌株AD2可能是一个与宿主具有古老联系并可以垂直传播给后代的谱系。 。

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